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Time-Spatial Ultrasound Induced Temperature Evaluation on Perfused Phantoms

机译:灌注幽灵的时间空间超声诱导温度评估

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Ultrasound usage as a hyperthermia therapeutic procedure still requires more research on spatial-temporal temperature propagation characterization over tissues and on non-invasive temperature monitoring techniques. Present work compares how temperature is propagated inside tissue phantoms without and with blood vessels. The artificial vessels simulated common carotid and right hepatic arteries pulsatile blood flow. Phantoms were heated by a therapeutic ultrasound (TU) device emitting continuously and temperature was monitored by thermocouples at some specific spatial points and evaluated by analysis of imaging ultrasound (IU) transducer's signals at those points. Experiments show that the existence of a blood vessel at the TU's axial line reduces the tissue temperature raise at that point in more than 50% in comparison with the non-perfused phantoms' behavior. As furthest spatial points are considered the effect of blood vessel is less noticeable. Thus the use of TU in vascularized tissues requires longer therapeutic sessions or higher TU intensities according to the location of the treatment area. Non-invasive temperature evaluation was performed using computed temporal echo-shifts (TES) proving that, besides the influence of a blood vessel on the overall model performance, TES are still a reliable noninvasive method of monitoring temperature in perfused tissues.
机译:超声使用作为热疗治疗程序仍需要更多关于组织和非侵入式温度监测技术的空间温度传播表征的研究。目前的工作比较了温度如何在没有血管的情况下在组织幻像内传播。人工血管模拟常见的颈动脉和右肝动脉脉动血流。通过连续发射的治疗性超声(Tu)器件加热幽灵,并且通过一些特定空间点的热电偶监测温度,并通过在这些点处的成像超声(IU)换能器的信号进行评估。实验表明,与非灌注的幽灵的行为相比,Tu轴向线处的血管存在于大于50%以上的组织温度升高。作为最远的空间点被认为是血管的效果不太明显。因此,根据治疗区域的位置,在血管化组织中的使用需要更长的治疗性会话或更高的TU强度。使用计算的时间回转(TES)进行非侵入性温度评估,证明,除了血管对整体模型性能的影响之外,TES仍然是灌注组织中的温度可靠的非侵入性方法。

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